Department of Pharmacology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7365, USA.
Mol Cell Biol. 2010 Nov;30(21):5135-44. doi: 10.1128/MCB.00758-10. Epub 2010 Sep 7.
Using a pangenomic loss-of-function screening strategy, we have previously identified 76 potent modulators of paclitaxel responsiveness in non-small-cell lung cancer. The top hit isolated from this screen, symplekin, is a well-established component of the mRNA polyadenylation machinery. Here, we performed a high-resolution phenotypic analysis to reveal the mechanistic underpinnings by which symplekin depletion collaborates with paclitaxel. We find that symplekin supports faithful mitosis by contributing to the formation of a bipolar spindle apparatus. Depletion of symplekin attenuates microtubule polymerization activity as well as expression of the critical microtubule polymerization protein CKAP5 (TOGp). Depletion of additional members of the polyadenylation complex induces similar phenotypes, suggesting that polyadenylation machinery is intimately coupled to microtubule function and thus mitotic spindle formation. Importantly, tumor cells depleted of symplekin display reduced fecundity, but the mitotic defects that we observe are not evident in immortalized cells. These results demonstrate a critical connection between the polyadenylation machinery and mitosis and suggest that tumor cells have an enhanced dependency on these components for spindle assembly.
使用全基因组功能丧失筛选策略,我们先前已经鉴定出 76 种非小细胞肺癌中紫杉醇反应的有效调节剂。从该筛选中分离出的顶级命中物symplekin 是 mRNA 多聚腺苷酸化机制的成熟组件。在这里,我们进行了高分辨率表型分析,以揭示symplekin 耗竭与紫杉醇协同作用的机制基础。我们发现symplekin 通过有助于形成双极纺锤体装置来支持忠实的有丝分裂。symplekin 的耗竭会减弱微管聚合活性以及关键微管聚合蛋白 CKAP5(TOGp)的表达。多聚腺苷酸化复合物的其他成员的耗竭会诱导类似的表型,表明多聚腺苷酸化机制与微管功能密切相关,从而与有丝分裂纺锤体的形成相关。重要的是,symplekin 耗竭的肿瘤细胞显示出繁殖力降低,但我们观察到的有丝分裂缺陷在永生化细胞中并不明显。这些结果表明多聚腺苷酸化机制与有丝分裂之间存在关键联系,并表明肿瘤细胞对这些组件用于纺锤体组装具有更高的依赖性。